Ke Zhongcheng, Shi Jianjun, Cheng Ziyang, Cheng Xiaoling, Wang Huan, Wang Meng, Wu Jingjing, Sun Yinyu, Li Changjiang
College of Chemistry and Chemical Engineering, Huangshan University, Huangshan, China.
Xin'an Chinese Medicine Technology Innovation Center, Huangshan, China.
Pharm Dev Technol. 2022 Jul;27(6):695-701. doi: 10.1080/10837450.2022.2107012. Epub 2022 Aug 5.
The aim of this study was to develop a gambogic acid-loaded mixed micelles (GA-M) system, using Kolliphor HS15 and lecithin, for enhancement of oral bioavailability. GA-M was prepared using the thin film hydration method, and particle size and zeta potential indexes were used to determine the optimized formulation was optimized with taking particle size, zeta potential as indexes. The optimal GA-M system had a mean particle size in the nanometer range (87.22 ± 0.68 nm) and zeta potential greater than 20 mV in magnitude (-21.63 ± 1.69 mV) at a 1:1 proportion of HS15: lecithin. Additionally, the carriers had a high entrapment efficiency (98.32 ± 3.52%) and drug loading (4.68 ± 0.17%). Furthermore, the GA release characteristics followed first-order kinetics, suggesting that the release of the molecule was achieved both by medium diffusion and structural erosion. Transport elucidation in Caco-2 cells demonstrated that the efflux ratio of encapsulated GA was dramatically decreased from 1.42 to 0.76, and pharmacokinetic studies showed that the oral bioavailability of GA-M was 2.3 times higher than that of free GA, indicating that HS15/lecithin mixed micelles could promote absorption in the gastrointestinal tract. Overall, these results present a micelle system suitable for oral delivery, with increased solubility and oral bioavailability of GA.
本研究的目的是开发一种载有藤黄酸的混合胶束(GA-M)系统,使用聚氧乙烯氢化蓖麻油HS15和卵磷脂来提高口服生物利用度。采用薄膜水化法制备GA-M,并以粒径和ζ电位指标来确定优化配方。以粒径、ζ电位为指标对最佳GA-M系统进行优化。在HS15与卵磷脂比例为1:1时,最佳GA-M系统的平均粒径在纳米范围内(87.22±0.68nm),ζ电位绝对值大于20mV(-21.63±1.69mV)。此外,载体具有较高的包封率(98.32±3.52%)和载药量(4.68±0.17%)。此外,GA的释放特性符合一级动力学,表明该分子的释放是通过介质扩散和结构侵蚀实现的。在Caco-2细胞中的转运研究表明,包封GA的外排率从1.42显著降低至0.76,药代动力学研究表明,GA-M的口服生物利用度比游离GA高2.3倍,表明HS15/卵磷脂混合胶束可促进胃肠道吸收。总体而言,这些结果表明该胶束系统适用于口服给药,可提高GA的溶解度和口服生物利用度。